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Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling.

Publication ,  Journal Article
Jing, H; Yang, X; Emenecker, RJ; Feng, J; Zhang, J; Figueiredo, MRAD; Chaisupa, P; Wright, RC; Holehouse, AS; Strader, LC; Zuo, J
Published in: Journal of genetics and genomics = Yi chuan xue bao
July 2023

The phytohormone auxin plays crucial roles in nearly every aspect of plant growth and development. Auxin signaling is activated through the phytohormone-induced proteasomal degradation of the Auxin/INDOLE-3-ACETIC ACID (Aux/IAA) family of transcriptional repressors. Notably, many auxin-modulated physiological processes are also regulated by nitric oxide (NO) that executes its biological effects predominantly through protein S-nitrosylation at specific cysteine residues. However, little is known about the molecular mechanisms in regulating the interactive NO and auxin networks. Here, we show that NO represses auxin signaling by inhibiting IAA17 protein degradation. NO induces the S-nitrosylation of Cys-70 located in the intrinsically disordered region of IAA17, which inhibits the TIR1-IAA17 interaction and consequently the proteasomal degradation of IAA17. The accumulation of a higher level of IAA17 attenuates auxin response. Moreover, an IAA17C70W nitrosomimetic mutation renders the accumulation of a higher level of the mutated protein, thereby causing partial resistance to auxin and defective lateral root development. Taken together, these results suggest that S-nitrosylation of IAA17 at Cys-70 inhibits its interaction with TIR1, thereby negatively regulating auxin signaling. This study provides unique molecular insights into the redox-based auxin signaling in regulating plant growth and development.

Duke Scholars

Published In

Journal of genetics and genomics = Yi chuan xue bao

DOI

ISSN

1673-8527

Publication Date

July 2023

Volume

50

Issue

7

Start / End Page

473 / 485

Related Subject Headings

  • Plant Growth Regulators
  • Plant Biology & Botany
  • Nitric Oxide
  • Indoleacetic Acids
  • Gene Expression Regulation, Plant
  • Arabidopsis Proteins
  • Arabidopsis
  • 3105 Genetics
  • 0604 Genetics
 

Citation

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Chicago
ICMJE
MLA
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Jing, H., Yang, X., Emenecker, R. J., Feng, J., Zhang, J., Figueiredo, M. R. A. D., … Zuo, J. (2023). Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling. Journal of Genetics and Genomics = Yi Chuan Xue Bao, 50(7), 473–485. https://doi.org/10.1016/j.jgg.2023.05.001
Jing, Hongwei, Xiaolu Yang, Ryan J. Emenecker, Jian Feng, Jian Zhang, Marcelo Rodrigues Alves de Figueiredo, Patarasuda Chaisupa, et al. “Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling.Journal of Genetics and Genomics = Yi Chuan Xue Bao 50, no. 7 (July 2023): 473–85. https://doi.org/10.1016/j.jgg.2023.05.001.
Jing H, Yang X, Emenecker RJ, Feng J, Zhang J, Figueiredo MRAD, et al. Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling. Journal of genetics and genomics = Yi chuan xue bao. 2023 Jul;50(7):473–85.
Jing, Hongwei, et al. “Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling.Journal of Genetics and Genomics = Yi Chuan Xue Bao, vol. 50, no. 7, July 2023, pp. 473–85. Epmc, doi:10.1016/j.jgg.2023.05.001.
Jing H, Yang X, Emenecker RJ, Feng J, Zhang J, Figueiredo MRAD, Chaisupa P, Wright RC, Holehouse AS, Strader LC, Zuo J. Nitric oxide-mediated S-nitrosylation of IAA17 protein in intrinsically disordered region represses auxin signaling. Journal of genetics and genomics = Yi chuan xue bao. 2023 Jul;50(7):473–485.
Journal cover image

Published In

Journal of genetics and genomics = Yi chuan xue bao

DOI

ISSN

1673-8527

Publication Date

July 2023

Volume

50

Issue

7

Start / End Page

473 / 485

Related Subject Headings

  • Plant Growth Regulators
  • Plant Biology & Botany
  • Nitric Oxide
  • Indoleacetic Acids
  • Gene Expression Regulation, Plant
  • Arabidopsis Proteins
  • Arabidopsis
  • 3105 Genetics
  • 0604 Genetics